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Anderson localization of light in two-dimensional random photonic crystals

机译:二维随机光子晶体中的安德森光定位

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We report the characteristics of Anderson localized modes in two-dimensional photonic crystals as a function of the degree of structural randomness. Theoretical analysis is performed by FDTD algorithm. We analyze impulse response of two-dimensional triangular photonic crystals, in which the positions of air holes are slightly deviated to random directions. It is shown that the appropriate degree of random departure from a perfect crystal state gives rise to multiple scattering of low group velocity band-edge modes and supports their strong Anderson localization. The obtained theoretical results are experimentally demonstrated by InP based two-dimensional random photonic crystal lasers. By use of SNOM we exhibit the direct observation of Anderson localization of light in a planar two-dimensional structure.
机译:我们报告二维光子晶体中的安德森本地化模式的特征作为结构随机性程度的函数。通过FDTD算法进行理论分析。我们分析了二维三角光子晶体的脉冲响应,其中气孔的位置稍微偏离了随机方向。结果表明,适当偏离理想晶体状态的程度会引起低群速度带边缘模的多次散射,并支持它们的强安德森定位。通过基于InP的二维随机光子晶体激光器,实验证明了所获得的理论结果。通过使用SNOM,我们可以直接观察到二维平面结构中的安德森光定位。

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